Claims
- 1. An anode comprising zinc particles, wherein at least about 50% by weight of the zinc particles are spherical, each spherical zinc particle having an aspect ratio of between about 1.0 and about 2.0, wherein the aspect ratio is equal to the ratio of the longest axis of the zinc particle to the mean perpendicular bisector of the longest axis.
- 2. The anode of claim 1, wherein at least about 60% by weight of the zinc particles are spherical.
- 3. The anode of claim 2, wherein at least about 70% by weight of the zinc particles are spherical.
- 4. The anode of claim 3, wherein at least about 80% by weight of the zinc particles are spherical.
- 5. The anode of claim 4, wherein at least about 90% by weight of the zinc particles are spherical.
- 6. The anode of claim 5, wherein at least about 95% by weight of the zinc particles are spherical.
- 7. The anode of claim 1, wherein the zinc particles comprise a zinc alloy including one or more components selected from the group consisting of aluminum, bismuth, calcium, gallium, indium, lithium, magnesium, lead, and tin.
- 8. A battery comprising:
a housing; an electrolyte; a cathode within the housing; and an anode within the housing, wherein the anode comprises zinc particles, and at least about 50% by weight of the zinc particles are spherical, each spherical zinc particle having an aspect ratio of between about 1.0 and about 2.0, wherein the aspect ratio is equal to the ratio of the longest axis of the zinc particle to the mean perpendicular bisector of the longest axis.
- 9. The battery of claim 8, wherein at least about 60% by weight of the zinc particles are spherical.
- 10. The battery of claim 9, wherein at least about 80% by weight of the zinc particles are spherical.
- 11. The battery of claim 10, wherein at least about 95% by weight of the zinc particles are spherical.
- 12. The battery of claim 8, wherein the zinc particles comprise a zinc alloy including one or more components selected from the group consisting of aluminum, bismuth, calcium, gallium, indium, lithium, magnesium, lead, and tin.
- 13. The battery of claim 8, wherein the cathode comprises MnO2.
- 14. The battery of claim 8, wherein the housing is prismatic.
- 15. The battery of claim 8, wherein the electrolyte is alkaline.
- 16. The battery of claim 15, wherein the battery comprises an AA battery.
- 17. The battery of claim 15, wherein the battery comprises an AAA battery.
- 18. The battery of claim 15, wherein the battery comprises a C or D battery.
- 19. A method of making zinc particles comprising centrifugally atomizing molten zinc in an atmosphere of less than about 1% oxygen to provide the zinc particles, wherein at least about 30% by weight of the zinc particles are spherical, each spherical zinc particle having an aspect ratio of between about 1.0 and about 2.0, wherein the aspect ratio is equal to the ratio of the longest axis of the zinc particle to the mean perpendicular bisector of the longest axis.
- 20. The method of claim 19, wherein the molten zinc is centrifugally atomized in an atmosphere of less than about 0.7% oxygen.
- 21. The method of claim 20, wherein the molten zinc is centrifugally atomized in an atmosphere of less than about 0.5% oxygen.
- 22. The method of claim 21, wherein the molten zinc is centrifugally atomized in an atmosphere of less than about 0.3% oxygen.
- 23. The method of claim 22, wherein the molten zinc is centrifugally atomized in an atmosphere of less than about 0.1% oxygen.
- 24. The method of claim 19, further comprising incorporating the zinc particles into an anode.
- 25. A method of making a battery comprising:
(a) centrifugally atomizing molten zinc in an atmosphere of less than about 1% oxygen, wherein the centrifugal atomization produces zinc particles, and wherein at least about 30% by weight of the zinc particles are spherical, each spherical zinc particle having an aspect ratio of between about 1.0 and about 2.0, wherein the aspect ratio is equal to the ratio of the longest axis of the zinc particle to the mean perpendicular bisector of the longest axis; (b) incorporating the zinc particles into an anode; and (c) incorporating the anode and a cathode into a cell housing.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Application Ser. No. 60/479,540, filed on Jun. 17, 2003, which is incorporated herein by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60479540 |
Jun 2003 |
US |